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Anisotropic growth of buckling-driven wrinkles in graphene monolayer

机译:石墨烯单层屈曲驱动皱纹的各向异性生长

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摘要

We theoretically and numerically investigate the growth of buckling-driven wrinkles in graphene monolayers. It is found that the growth of buckling-driven wrinkles in a graphene monolayer is remarkably chirality- and size-dependent. In small sizes, the flexural response of a graphene sheet cannot be accurately described by the classical Euler regime, and the non-continuum effect leads to zigzag-along-preferred buckling. With the increase of size, the width/length ratio a of the compressed region plays an important role in the growth of buckling-driven wrinkles. When alpha < 0.5, the oblique buckling happens in armchair-along compression; when 0.5 < alpha < 1.0, the effect of edge warp leads to zigzag-along-preferred buckling. When 1.0 < alpha < 3.0, the potential energy density difference due to chiral bending stiffness leads to armchair-along-preferred buckling. When alpha > 3.0, the non-continuum effect and chiral bending stiffness can both be neglected, and the buckling in a graphene monolayer is isotropic. The chirality-along-preferred transition of compressed buckling in a graphene monolayer leads to an improved fundamental understanding of the dynamics mechanism of graphene-based nanodevices, especially for the nanodevices with high frequency response.
机译:我们在理论和数值上研究了石墨烯单层中屈曲驱动皱纹的生长。发现在石墨烯单层中屈曲驱动的皱纹的生长显着取决于手性和尺寸。在小尺寸中,经典的欧拉体系无法准确地描述石墨烯片的挠曲响应,并且非连续性效应会导致锯齿形的屈曲。随着尺寸的增加,压缩区域的宽/长比α在屈曲驱动的皱纹的生长中起重要作用。当alpha <0.5时,倾斜屈曲发生在扶手椅压缩时;当0.5 3.0时,可以忽略非连续谱效应和手性弯曲刚度,并且石墨烯单层的屈曲是各向同性的。石墨烯单层中压缩屈曲的手征性优选过渡导致对基于石墨烯的纳米器件的动力学机理,特别是对于具有高频响应的纳米器件的动力学机理的基本理解得到改善。

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